Electronic and optical properties of beryllium sulfide monolayer: Under stress and strain conditions
-
Add time:08/26/2019 Source:sciencedirect.com
Electronic and optical properties of two-dimensional graphene-like structure of beryllium sulfide (BeS) have been studied in the framework of the density functional theory. Different values of stress and strain are exerted for tuning electronic and optical parameters. The electronic results show that both biaxial stress and strain effects cause band gap reduction with different rates. Also, we have red and blue shifts in the optical absorption spectrum peaks by applying strain and stress, respectively. Our results express that BeS monolayer can be the promising candidate for the future nano-devices.
We also recommend Trading Suppliers and Manufacturers of beryllium sulphide (cas 13598-22-6). Pls Click Website Link as below: cas 13598-22-6 suppliers
Prev:Raman and infrared spectroscopic characterization of beryllonite, a sodium and BERYLLIUM PHOSPHATE (cas 13598-15-7) mineral – implications for mineral collectors
Next:The electronic transport characteristics of hybridized hexagon beryllium sulfide and graphene nanoribbons) - 【Back】【Close 】【Print】【Add to favorite 】
- Related Information
- All-solid-state cells with Li4Ti5O12/carbon nanotube composite electrodes prepared by infiltration with argyrodite sulfide-based solid electrolytes via liquid-phase processing09/02/2019
- Friction behaviour evaluation in beryllium–copper threaded connections09/01/2019
- Ab-initio study of phase stability, thermodynamic and elastic properties of beryllium sulfide under extreme condition08/31/2019
- Sources, transport and sinks of beryllium in a coastal landscape affected by acidic soils08/30/2019
- The electronic transport properties of graphene-like beryllium sulfide nanoribbons08/29/2019
- Structural stability and vibrational analysis of beryllium sulfide BeS from the bulk to the (n,0) nanotubes. An ab initio description08/28/2019
- The electronic transport characteristics of hybridized hexagon beryllium sulfide and graphene nanoribbons08/27/2019
-
Health and Chemical more >


